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Ballooning of River-Plume Bulge and Its Stabilization by Tidal Currents

机译:河涌隆起的膨胀及其潮汐流的稳定作用

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摘要

When freshwater debouches into an adjacent ocean, an anticyclonic eddy (bulge) is formed in front of the river mouth. It is well known that a bulge growing offshore (ballooning) hardly reaches a steady state in the absence of either ambient currents or wind forcing. This study provides a physical interpretation for the ballooning of river-plume bulges by conducting numerical experiments in which a river plume is induced by a coastal freshwater source. Part of the freshwater released to the model ocean undergoes inertial instability. Near-inertial oscillations are predominant when disturbances are not forced in ambient waters of the river plume. These isotropic disturbances are amplified by inertial instability, so that unstabilized freshwater can move in arbitrary directions. Thus, unstabilized freshwater does not need to move toward the coastal boundary current on the right-hand side of the river mouth. Freshwater unstabilized for a long time can stay in the bulge for a long time. Unstabilized freshwater accumulates gradually in the bulge, and so ballooning occurs. When the direction of disturbances is prescribed in ambient waters, unstabilized freshwater is forced to move in the same direction. Thereby, the motion of unstabilized freshwater is restricted in the alongshore direction when background disturbances are induced by alongshore tidal currents. It is therefore concluded that tidal currents play a role in stabilizing the offshore growth of river-plume bulges in coastal and shelf waters.
机译:当淡水涌入附近的海洋时,在河口的前面形成了反气旋涡(凸起)。众所周知,在没有环境电流或风力的情况下,在海上生长的气球(气球)几乎不会达到稳定状态。这项研究通过进行数值试验,为沿海浅水源诱发河羽的过程,提供了对河水波纹凸起膨胀的物理解释。释放到模型海洋中的部分淡水经历了惯性不稳定性。当在河羽的周围水域中不强加干扰时,几乎是惯性振荡。这些各向同性扰动会因惯性不稳定性而扩大,因此不稳定的淡水可以沿任意方向移动。因此,不稳定的淡水无需流向河口右侧的沿海边界水流。长时间未稳定的淡水可以在凸起中停留很长时间。不稳定的淡水逐渐堆积在凸起中,因此发生膨胀。当在环境水中规定了扰动方向时,不稳定的淡水被迫向同一方向移动。因此,当沿岸潮流引起背景干扰时,不稳定的淡水的运动被沿沿岸方向限制。因此可以得出结论,潮流在稳定沿海和陆架水域的河水波纹凸起物的近海生长中起着重要作用。

著录项

  • 来源
    《Journal of Physical Oceanography》 |2005年第12期|p.2337-2351|共15页
  • 作者

    ATSUHIKO ISOBE;

  • 作者单位

    Dept. of Earth System Science and Technology, Interdisciplinary Graduate School of Engineering Sciences, Kyushu University, 6-1 Katsuga-Koen, Kasuga Fukuoka 816-8580, Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋学;
  • 关键词

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